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Central and Peripheral Changes in Quadriceps Femoris Function After Different Types of Isometric Strength Training

Central and Peripheral Changes in Quadriceps Femoris Function After Different Types of Isometric Strength Training

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT04624438
Enrollment
52
Registered
2020-11-10
Start date
2018-04-09
Completion date
2018-06-15
Last updated
2020-11-10

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Quadriceps Muscle Function

Brief summary

The purpose of this investigation is to examine the effects of 6-week unilateral isometric training interventions over quadriceps femoris on maximal strength and RFD-SF parameters and cortical excitability. Isometric strength training involved either electromyostimulation, voluntary activation, or the combination of both. The second aim is to investigate the potential cross-over effect on a non-trained leg.

Detailed description

A longitudinal pre-post design with random assignment of the participants to one of three experimental groups or the control group was used. Quadriceps femoris (QF) function and cortical excitability were assessed on four occasions: prior to the intervention (pre-test), after 3 weeks of training (served for the adjustment of exercise intensity), after 6 weeks of training (post-test), and three weeks after the competition of training intervention (detraining) (Figure 1). Isometric strength training involves activation of QF applying EMS, VOLUNTARY, or the combination of both EMS and VOLUNTARY (COMBINED). The pre-test also served to familiarize participants with the training protocols and to determine the intensity of EMS needed to achieve 60%MVC. Quadriceps femoris (QF) function was assessed by MVC and RFD-SF. Cortical excitability was assessed with transcranial magnetic stimulation applied over the M1 region. Prior to the pretest, body mass and percent of body fat were assessed using a bioelectric impedance method (In Body 720; USA) and body height with a standard stadiometer. After the pretest, the participants were randomly assigned to either one of the experimental groups (EMS, VOLUNTARY, or COMBINED) and the control group (CONTROL). Experimental groups performed unilateral isometric strength training three times per week for 6 weeks. All participants were advised to refrain from all resistance training targeting the legs between pre-test and post-test.

Interventions

OTHERIsometric training with electromyostimulation

Each training session (18 in total) consisted of forty 4-s contractions separated by 20 s inter-contraction intervals. The exercise intensity was close-to-identical among the sessions (60 %MVC). The force intensity was determined individually during pretest where EMS was delivered at maximal tolerable dose. Electrical stimulation was 6.25-second long and was followed by a rest period of 20-second (duty cycle 15%). Stimulation characteristics were selected among the Compex commercially available strength programs. The stimulation intensity was monitored on-line and determined by the subject at the start of each EMS session according to his/her pain threshold to produce a force corresponding to at least 60% of the pretest MVC score.

OTHERIsometric training with voluntary activation

Each training session (18 in total) consisted of forty 4-s contractions separated by 20 s inter-contraction intervals. The exercise intensity was close-to-identical among the sessions (60 %MVC). Participants were required to reach the proscribed force level only through voluntary activation of QF. To attain the same contraction/rest ratio as in EMS, automated audible signals were delivered in accordance with the contraction-rest pattern produced by the muscle stimulation device. To ensure participants produced 60% of individual MVC during each contraction the force level was measured with a force transducer and real-time feedback was provided on a computer screen.

OTHERIsometric training with combination of electromyostimulation and voluntary activation

Each training session (18 in total) consisted of forty 4-s contractions separated by 20 s inter-contraction intervals. The exercise intensity was close-to-identical among the sessions (60 %MVC). The proscribed force level was reached by the simultaneous action of EMS and VOLUNTARY. Each contraction was 6.25-second long and was followed by a rest period of 20-second (duty cycle 15%). Electrical stimulation corresponded to 30% of MVC, while the remaining 30% was achieved through voluntary muscle activation. To ensure participants produced a force corresponding to 60% of MVC during each contraction the force level was measured with a force transducer and real-time feedback was provided on a computer screen.

Sponsors

University of Primorska, Faculty of Health Sciences
CollaboratorUNKNOWN
University of Belgrade
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
FACTORIAL
Primary purpose
BASIC_SCIENCE
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
19 Years to 30 Years
Healthy volunteers
Yes

Inclusion criteria

* young healthy, physically active participants of both genders

Exclusion criteria

* no history of injuries, muscle-skeletal or neurological disease, or medications intake

Design outcomes

Primary

MeasureTime frameDescription
MVCBaselineMaximal isometric force and Rate of Force Development of quadriceps femoris muscle during isometric contractions with maximal effort
The slope of the rate-of-force development scaling factor (RFD-SF)BaselineThe slope of the relationship (RFD-SF) between muscle force and rate of force development during rapid isometric contractions of varying intensities
Motor Evoked Potentials (MEP)BaselineMEPs were elicited in quadriceps femoris by transcranial magnetic stimulation (TMS) over M1 area. Motor cortex excitability was estimated by measuring the MEP amplitude (Input-Output, IO) peak to peak, caused by 20 randomized individual TMS stimulates with 100% (IO1), 120% (IO2) and 130% (IO3) of active motor threshold (AMT) intensity.

Secondary

MeasureTime frameDescription
The linearity of the rate-of-force development scaling factor (RFD-SF) relationshipBaselineThe linearity, described by coefficient of determination (r-squared) of the relationship (RFD-SF) between muscle force and rate of force
M-waveBaselineThe tracing of the earliest electromyography (EMG) response to the stimulation of femoral nerve

Countries

Serbia

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026